Easy and computer-time-saving implementation of the van der Pauw method including anisotropy and probe positioning correction factors using approximate closed-form analytical functions.

S. Hurand, T. Chommaux, Pierre-Olivier Renault, Thierry Girardeau, Fabien Paumier
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引用次数: 1

Abstract

Measurements in a van der Pauw configuration often require the use of complicated mathematical expressions or implicit relations, which may be computer-time-consuming or tedious to implement in a given software. Thus, a closed-form expression is often desirable. We propose to approximate these relations by closed-form analytical functions using only basic operators that can be easily implemented. We present explicitly the functions and the numerical values of their parameters for the cases of standard van der Pauw measurement, anisotropic resistivities, and the probe position correction factor. The discrepancy with the exact values is smaller than 10-5, which is sufficient for practical purposes.
采用近似封闭形式的解析函数实现了包括各向异性和探头定位校正因子在内的范德堡方法,简便且节省计算机时间。
范德波组态中的测量通常需要使用复杂的数学表达式或隐式关系,在给定的软件中实现可能会耗费计算机时间或繁琐。因此,封闭形式的表达式通常是可取的。我们建议用封闭形式的解析函数近似这些关系,只使用易于实现的基本算子。我们明确地给出了标准范德波测量、各向异性电阻率和探头位置校正因子的函数及其参数的数值。与精确值的偏差小于10-5,这对于实际目的来说是足够的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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